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首页> 外文期刊>The Journal of Chemical Physics >Size-exclusion partitioning of neutral solutes in crosslinked polymer networks: A Monte Carlo simulation study
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Size-exclusion partitioning of neutral solutes in crosslinked polymer networks: A Monte Carlo simulation study

机译:交联聚合物网络中中性溶质的尺寸排阻分配:蒙特卡洛模拟研究

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In this work, the size-exclusion partitioning of neutral solutes in crosslinked polymer networks has been studied through Monte Carlo simulations. Two models that provide user-friendly expressions to predict the partition coefficient have been tested over a wide range of volume fractions: Ogston’s model (especially devised for fibrous media) and the pore model. The effects of crosslinking and bond stiffness have also been analyzed. Our results suggest that the fiber model can acceptably account for size-exclusion effects in crosslinked gels. Its predictions are good for large solutes if the fiber diameter is assumed to be the effective monomer diameter. For solutes sizes comparable to the monomer dimensions, a smaller fiber diameter must be used. Regarding the pore model, the partition coefficient is poorly predicted when the pore diameter is estimated as the distance between adjacent crosslinker molecules. On the other hand, our results prove that the pore sizes obtained from the pore model by fitting partitioning data of swollen gels are overestimated.
机译:在这项工作中,通过蒙特卡洛模拟研究了交联聚合物网络中中性溶质的尺寸排阻分配。在广泛的体积分数范围内,已经测试了两种提供用户友好表达式以预测分配系数的模型:Ogston模型(尤其是针对纤维介质设计的模型)和孔隙模型。还分析了交联和粘合刚度的影响。我们的结果表明,纤维模型可以很好地说明交联凝胶中的尺寸排阻作用。如果假定纤维直径为有效单体直径,则对大溶质的预测是好的。对于与单体尺寸相当的溶质尺寸,必须使用较小的纤维直径。关于孔模型,当将孔直径估计为相邻的交联剂分子之间的距离时,分配系数难以预测。另一方面,我们的结果证明,通过拟合溶胀的凝胶的分区数据,从孔隙模型获得的孔径被高估了。

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